23 pages, 30 figuresInternational audienceWe consider a model of Dirac fermions coupled to flexural phonons to describe a graphene sheet fluctuating in dimension $2+d$. We derive the self-consistent screening equations for the quantum problem, exact in the limit of large $d$. We first treat the membrane alone, and work out the quantum to classical, and harmonic to anharmonic crossover. For the coupled electron-membrane problem we calculate the dressed two-particle propagators of the elastic and electron interactions and find that it exhibits a collective mode which becomes unstable at some wave-vector $q_{\rm c}$ for large enough coupling $g$. The saddle point analysis, exact at large $d$, indicates that this instability corresponds to spon...
We investigate the problem of dynamical gap generation in suspended graphene by long-range Coulomb i...
One of the main mysteries to contemporary physics is that of the behavior of many-body quantum syste...
Ideally, graphene may be regarded as a strictly 2-D structure. However, as it exists in a 3-D world,...
We consider a model of Dirac fermions coupled to flexural phonons to describe a graphene sheet fluct...
We present a theory of electron-mediated interaction between adatoms in graphene. In the case of res...
We have determined the electronic bandstructure of clean and potassium-doped single layer graphene, ...
Single-layer graphene sheets are typically characterized by long-wavelength corrugations (ripples) w...
We report on numerical study of the Dirac fermions in partially filled N=3 Landau level (LL) in grap...
We study the quantum many-body ground states of electrons on the half-filled honeycomb lattice with ...
Monte Carlo simulation of a 2+1 dimensional model of voltage-biased bilayer graphene, consisting of ...
We present the first results of numerical simulations of a 2+1 dimensional fermion field theory base...
Graphene is a convenient material for nanomechanical applications since high-frequency oscillations ...
We introduce a different perspective describing electron-phonon interactions in graphene based on cu...
We show that, at sufficiently large strength of the long-range Coulomb interaction, a mass term brea...
In Chapter 1, we present a brief introduction to the tight-binding model of graphene and show that i...
We investigate the problem of dynamical gap generation in suspended graphene by long-range Coulomb i...
One of the main mysteries to contemporary physics is that of the behavior of many-body quantum syste...
Ideally, graphene may be regarded as a strictly 2-D structure. However, as it exists in a 3-D world,...
We consider a model of Dirac fermions coupled to flexural phonons to describe a graphene sheet fluct...
We present a theory of electron-mediated interaction between adatoms in graphene. In the case of res...
We have determined the electronic bandstructure of clean and potassium-doped single layer graphene, ...
Single-layer graphene sheets are typically characterized by long-wavelength corrugations (ripples) w...
We report on numerical study of the Dirac fermions in partially filled N=3 Landau level (LL) in grap...
We study the quantum many-body ground states of electrons on the half-filled honeycomb lattice with ...
Monte Carlo simulation of a 2+1 dimensional model of voltage-biased bilayer graphene, consisting of ...
We present the first results of numerical simulations of a 2+1 dimensional fermion field theory base...
Graphene is a convenient material for nanomechanical applications since high-frequency oscillations ...
We introduce a different perspective describing electron-phonon interactions in graphene based on cu...
We show that, at sufficiently large strength of the long-range Coulomb interaction, a mass term brea...
In Chapter 1, we present a brief introduction to the tight-binding model of graphene and show that i...
We investigate the problem of dynamical gap generation in suspended graphene by long-range Coulomb i...
One of the main mysteries to contemporary physics is that of the behavior of many-body quantum syste...
Ideally, graphene may be regarded as a strictly 2-D structure. However, as it exists in a 3-D world,...